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Large-Area Protein Patterns Generated by Ordered Binary Colloidal Assemblies as Templates

机译:由有序的二进制胶体集合作为模板生成的大面积蛋白质模式。

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摘要

We demonstrate the use of binary colloidal assemblies as lithographic masks to generate tunable Au patterns on SiO(2) substrates with dimensions ranging from micrometers to nanometers. Such patterns can be modified with different chemistries to create patterns with well-defined sites for selective adsorption of proteins, where the pattern size and spacing is adjustable depending on particle choice. In our system, the binary colloidal assemblies contain large and small particles of similar or different material and are self-assembled from dilute dispersions with particle size ratios ranging from 0.10 to 0.50. This allows masks with variable morphology and thus production of chemical patterns of tunable geometry. Finally, the Au or SiO(2) regions of the pattern are surface modified with protein resistant oligoethyleneglycol self-assembled molecules, which facilitates site selective adsorption of proteins into the unmodified regions of the pattern. This we show with fluorescently labeled bovine serum albumin.
机译:我们演示了使用二进制胶体组件作为光刻掩模,以在尺寸范围从微米到纳米的SiO(2)基板上生成可调Au模式。可以用不同的化学方法修饰此类图案,以创建具有明确位置的图案,以选择性吸附蛋白质,其中图案大小和间距可根据粒子选择进行调整。在我们的系统中,二元胶体组件包含大小相似或不同材料的大颗粒和小颗粒,并由粒径范围为0.10至0.50的稀分散体自组装而成。这允许具有可变形态的掩模,并因此产生可调几何形状的化学图案。最后,用抗蛋白质的低聚乙二醇自组装分子对图案的Au或SiO(2)区域进行表面修饰,这有助于将蛋白质选择性地吸附到图案的未修饰区域中。我们用荧光标记的牛血清白蛋白显示了这一点。

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